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notka56 [123]
3 years ago
12

If two triangles have three congruent, corresponding angles, what additional information is needed to prove the triangles are co

ngruent? (hint, Use ASA or AAS)
Mathematics
2 answers:
Rina8888 [55]3 years ago
7 0

AAS, or angle-angle-side, states that if two angles and the non-included side of one triangle are congruent to the corresponding two angles and non-included side of a second triangle, then the triangles are congruent. We have an angle and a side.Nov 29, 2017

Nataliya [291]3 years ago
4 0

Answer:

Look at the two triangles and the congruent. (I think you know what that means, right?) Look at it carefully then multiply and add.

Step-by-step explanation:

Hope you get it!

Please give brainliest.

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AC^2 + CB^2 = AB^2, so

AB = √(AC^2 + CB^2) = √(5^2+9^2) = √(25+81) = √106.


However, in vector algebra, A=(-4,3) and B=(5,-2), and (A-B)=(-9,5).

distance(A,B) = √((A-B) dot (A-B)),

where (x,y) dot (x,y) = x×x + y×y.

So the answer is √((-9,5)dot(-9,5)) = √((-9)^2+5^2) = √(81+25) = √106.


This works in 3D, (x,y,z) dot (x,y,z) = x×x + y×y + z×z. distance(A,B) gives √(x^2+y^2+z^2) for distances in 3 dimensions.


In 4D, distance is √(x^2+y^2+z^2+w^2)


And in infinite dimensional Hilbert space, (x,y,z,a,b,c,...) dot (x,y,z,a,b,c,...) = x×x + ... c×c + .... distance(A,B) gives

√(x^2+...+c^2+...).


And for real valued functions, f(x) dot g(x) is roughly the sum of f(x)×g(x) over uncountably many points x from -infinity to +infinity. It's the area under h(x)=f(x)g(x).



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